Multiphase Flows: Computational Methods III
ORAL · G24
Presentations
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Analysis and performance of high-order finite difference shock capturing schemes for multi-fluid flow computations
ORAL
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Authors
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Khosro Shahbazi
South Dakota School of Mines and Technology
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Low-dissipation strategies for simulating compressible turbulent multiphase flows
ORAL
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Authors
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Michael B. Kuhn
Cornell University
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Olivier Desjardins
Cornell University
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Pressure-based algorithm and thermodynamic closure for compressible gas-liquid flows
ORAL
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Authors
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Fabian Denner
Otto-von-Guericke University Magdeburg, Magdeburg
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Fabien Evrard
Otto-von-Guericke University Magdeburg
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Berend van Wachem
Otto-von-Guericke University Magdeburg
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Simulating Multi-Species Compressible Reactive Flow at Low-Mach Number with a High-Order Fully-Implicit All-Speed Flow Solver
ORAL
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Authors
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Brian Weston
Lawrence Livermore National Laboratory
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Robert Nourgaliev
Lawrence Livermore National Laboratory
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Matt McClelland
Lawrence Livermore National Laboratory
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A Dual Scale Model for Reconstructing Sub-Filter Shear Driven Instabilities
ORAL
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Authors
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Austin Goodrich
Arizona State University
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Marcus Herrmann
Arizona State University
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A stabilized coupled level set and volume of fluid method for incompressible two-phase flow at high Reynolds number and high density ratio
ORAL
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Authors
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Han Liu
Department of Mechanical Engineering \& St. Anthony Falls Laboratory University of Minnesota
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Qiang Gao
Department of Mechanical Engineering and Saint Anthony Falls Laboratory, University of Minnesota, Department of Mechanical Engineering University of Minnesota
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Lian Shen
University of Minnesota, Univ of Minnesota - Twin Cities, Department of Mechanical Engineering and Saint Anthony Falls Laboratory, University of Minnesota, Department of Mechanical Engineering \& St. Anthony Falls Laboratory University of Minnesota
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On the use of traction outlet boundary conditions for turbulent multiphase flows
ORAL
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Authors
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Cyril Bozonnet
Grenoble Alpes University
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Olivier Desjardins
Cornell University
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Guillaume Balarac
Grenoble Institute of Technology
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A numerical model for liquid-vapor flows with arbitrary heat and mass transfer relaxation times and general equation of state
ORAL
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Authors
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Marica Pelanti
ENSTA Paris
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Marco De Lorenzo
Compressor Controls Corporation
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Philippe Lafon
EDF
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